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峨眉山玄武岩的输送通道:云南元谋朱布岩体 被引量:1

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摘要   地幔柱成矿系统中,岩浆型Cu-Ni-PGE矿床是最重要成矿作用之一,世界上许多重要的岩浆型Cu-Ni-PGE矿床的成矿岩体,如布什维尔德、诺里尔斯克、大岩墙和Duluth Complex等都被认为是地幔柱岩浆活动的产物.……
出处 《矿物岩石地球化学通报》 CAS CSCD 2007年第z1期46-48,共3页 Bulletin of Mineralogy, Petrology and Geochemistry
基金 国家自然科学基金资助项目(40572054,40274027,40573020)
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  • 1陶琰,高振敏,罗泰义,杨竹森,祁敬东,贺英军.云南金宝山铂钯矿床成矿机制探讨[J].矿物岩石地球化学通报,2000,19(4):337-338. 被引量:8
  • 2徐红.诸广岩体中闪长质包体的成因探讨[J].矿物岩石,1994,14(3):16-21. 被引量:5
  • 3胡瑞忠,陶琰,钟宏,黄智龙,张正伟.地幔柱成矿系统:以峨眉山地幔柱为例[J].地学前缘,2005,12(1):42-54. 被引量:110
  • 4汤中立.中国岩浆硫化物矿床的主要成矿机制[J].地质学报,1996,70(3):237-243. 被引量:99
  • 5云南省地质矿产局.云南省区域地质志[M].北京:地质出版社,1990.415-427.
  • 6杨星 李行.中国含铂基性超基性岩体与铂(族)矿床[M].西安:西安交通大学出版社,1992.183.
  • 7Zhong H,Zhou X H,Zhou M F,Sun M,Liu B G.Platinum-group element geochemistry of the Hongge Fe-V-Ti deposit in the Pan-Xi area,southwestern China[J].Mineralium Deposita,2002,37:226-239.
  • 8Song X Y,Zhou M F,Cao Z M,Sun M,Wang Y L.Ni-Cu-(PGE)magmatic sulfide deposits in the Yangliuping area,Permian Emeishan igneous province,SW China[J].Mineralium Deposita,2003,38:831-843.
  • 9Barnes S J,Maier W D.The fractionation of Ni,Cu and the noble metals in silicate and sulfide liquids[A].Keays R R,Lesher C M,Lightfoot P C,eds.Dynamic processes in magmatic ore deposits and their application in mineral exploration[Z].Geological Association of Canada,Short Course,1999,13:69-106.
  • 10Xu Y,Chung S L,Jahn B M,Wu G.Petrological and geochemical constraints on the petrogenesis of the Permo-Triassic Emeishan flood basalts in southwestern China[J].Lithos,2001,58:145-168.

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  • 1高帮飞,王庆飞,刘琰,徐浩.中国南方红土型金成矿系列研究综述[J].地质与勘探,2006,42(3):1-7. 被引量:10
  • 2苏尚国,沈存利,邓晋福,汤中立,耿科.铂族元素的地球化学行为及全球主要铂族金属矿床类型[J].现代地质,2007,21(2):361-370. 被引量:22
  • 3Barnes S J, Naldrett A J, Gorton M P. 1985. The origin of the fractionation of platinum-group elements in terrestrial magmas. Chemical Geology, 53(344) :303-323.
  • 4Bolton B R, Keays R R. 1990. Platinum abundance in ferromanganese crusts and nodules from the SW Pacific and Southern Oceans. AAPG Bulletin, 74(6) : 961.
  • 5Bowles J F W, Gize A P, Cowden A. 1994. The mobility of the platinum-group elements in the soils of the Freetown Peninsula, Sierra Leone. The Canadian Mineralogist, 32(4) : 957-967.
  • 6Brookins D G. 1987. Platinoid element Eh-pH diagrams (25℃, 1 bar) in the systems M-O-H-S with geochemical applications. Chemical Geology, 64(1-2) : 17--24.
  • 7Cave R R, Ravizza G E, German C R, Thomson J, Nesbitt R W. 2003. Deposition of osmium and other platinum-group elements beneath the ultramafic-hosted Rainbow hydrothermal plume. Earth and Planetary Science Letters, 210(1-2): 65-79.
  • 8Economou E M, Eliopoulos D G. 2000. Palladium, platinum and gold concentration in porphyry copper systems of Greece and their genetic significance. Ore Geology Reviews, 16(1-2) : 59 -70.
  • 9Fletcher W K, Cook S J, Hall G E M, Seagel R K, Dunn C E. 1995. Enrichment of platinum and associated elements inorganic seepage soils of the Tulameen ultramafic complex, southern British Columbia. Journal of Geochemical Exploration, 54(1) : 39-47.
  • 10Gray D J, Schorin K H, Butt C R M. 1996. Mineral associations of platinum and palladium in lateritic regolith, Ora Banda Sill, Western Australia. Journal of Geochemical Exploration, 57 (1 --3) : 245-255.

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